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赤霉素20-氧化酶基因表达的变化强烈影响马铃薯植株的茎长、块茎诱导和块茎产量。

Changes in GA 20-oxidase gene expression strongly affect stem length, tuber induction and tuber yield of potato plants.

作者信息

Carrera E, Bou J, García-Martínez J L, Prat S

机构信息

Dpt de Genètica Molecular, Institut de Biologia Molecular de Barcelona-CSIC, Jordi Girona, 18-26, 08034 Barcelona, Spain.

出版信息

Plant J. 2000 May;22(3):247-56. doi: 10.1046/j.1365-313x.2000.00736.x.

Abstract

Gene StGA20ox1 encoding potato GA 20-oxidase is expressed to relatively high levels in leaves and regulated by daylength. To investigate whether this gene is involved in photoperiodic regulation of tuber formation, we have obtained transgenic potato plants expressing sense and antisense copies of the StGA20ox1 cDNA. Over-expression of this cDNA resulted in taller plants that required a longer duration of a short day photoperiod (SD) to tuberize. Tubers from these plants had a decreased time of dormancy and developed sprouts with elongated internodes. Plants expressing antisense copies of the StGA20ox1 cDNA had shorter stems, a decreased length of the internodes and tuberized earlier than control plants, showing increased tuber yields. Antisense inhibition of this gene had no visible effect on the time of dormancy of the tubers, although at the end of dormancy these formed sprouts with shortened internodes. Decreased levels of endogenous GA20 and GA1 were detected in the apex and first leaves of the antisense lines. These results demonstrate the involvement of the GA 20-oxidase activity encoded by StGA20ox1 in the control of stem elongation and in tuber induction but not in tuber dormancy, indicating that the latter may be regulated by another member of the gene family.

摘要

编码马铃薯赤霉素20-氧化酶的基因StGA20ox1在叶片中表达水平相对较高,并受日照长度调节。为了研究该基因是否参与块茎形成的光周期调控,我们获得了表达StGA20ox1 cDNA正义和反义拷贝的转基因马铃薯植株。该cDNA的过表达导致植株更高,需要更长的短日照光周期(SD)才能形成块茎。这些植株的块茎休眠期缩短,长出的芽节间伸长。表达StGA20ox1 cDNA反义拷贝的植株茎较短,节间长度缩短,比对照植株更早形成块茎,块茎产量增加。对该基因的反义抑制对块茎的休眠期没有明显影响,尽管在休眠结束时这些块茎长出的芽节间缩短。在反义株系的顶端和第一片叶子中检测到内源性GA20和GA1水平降低。这些结果表明,StGA20ox1编码的赤霉素20-氧化酶活性参与茎伸长的控制和块茎诱导,但不参与块茎休眠,这表明后者可能受该基因家族的另一个成员调控。

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